THOMAS COOPER to Heart
This is a "connection" page, showing publications THOMAS COOPER has written about Heart.
Connection Strength
1.984
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Neonatal cardiac dysfunction and transcriptome changes caused by the absence of Celf1. Sci Rep. 2016 10 19; 6:35550.
Score: 0.381
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Alternative splicing regulates vesicular trafficking genes in cardiomyocytes during postnatal heart development. Nat Commun. 2014 Apr 22; 5:3603.
Score: 0.321
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MicroRNAs coordinate an alternative splicing network during mouse postnatal heart development. Genes Dev. 2010 Apr 01; 24(7):653-8.
Score: 0.242
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A postnatal switch of CELF and MBNL proteins reprograms alternative splicing in the developing heart. Proc Natl Acad Sci U S A. 2008 Dec 23; 105(51):20333-8.
Score: 0.221
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Dynamic balance between activation and repression regulates pre-mRNA alternative splicing during heart development. Dev Dyn. 2005 Jul; 233(3):783-93.
Score: 0.174
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Alternative splicing regulation impacts heart development. Cell. 2005 Jan 14; 120(1):1-2.
Score: 0.169
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Rescue of Scn5a mis-splicing does not improve the structural and functional heart defects of a DM1 heart mouse model. Hum Mol Genet. 2024 10 07; 33(20):1789-1799.
Score: 0.166
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Roles for RNA-binding proteins in development and disease. Brain Res. 2016 09 15; 1647:1-8.
Score: 0.091
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RNA-binding proteins in heart development. Adv Exp Med Biol. 2014; 825:389-429.
Score: 0.079
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The cardiac troponin T alternative exon contains a novel purine-rich positive splicing element. Mol Cell Biol. 1993 Jun; 13(6):3660-74.
Score: 0.075
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Cardiac tissue-specific repression of CELF activity disrupts alternative splicing and causes cardiomyopathy. Mol Cell Biol. 2005 Jul; 25(14):6267-78.
Score: 0.044
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Antagonistic regulation of mRNA expression and splicing by CELF and MBNL proteins. Genome Res. 2015 Jun; 25(6):858-71.
Score: 0.021